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Published on: July 25, 2020
Active Estrogen Receptor-alpha Signaling in Ovarian Cancer Models and Clinical Specimens
Courtney L Andersen1,2,3, Matthew J Sikora1,3, Michelle M Boisen3,4
1Department of Pharmacology & Chemical Biology, University of Pittsburgh, Pittsburgh, Pennsylvania.
Abstract:
Purpose: High-grade serous ovarian cancer (HGSOC) is an aggressive disease with few available targeted therapies. Despite high expression of estrogen receptor-alpha (ERα) in approximately 80% of HGSOC and some small but promising clinical trials of endocrine therapy, ERα has been understudied as a target in this disease. We sought to identify hormone-responsive, ERα-dependent HGSOC.Experimental Design: We characterized endocrine response in HGSOC cells across culture conditions [ two-dimensional (2D), three-dimensional (3D), forced suspension] and in patient-derived xenograft (PDX) explants, assessing proliferation and gene expression. Estrogen-regulated transcriptome data were overlapped with public datasets to develop a comprehensive panel of ERα target genes. Expression of this panel and ERα H-score were assessed in HGSOC samples from patients who received endocrine therapy. Time on endocrine therapy was used as a surrogate for clinical response.Results: Proliferation is ERα-regulated in HGSOC cells in vitro and in vivo, and is partly dependent on 3D context. Transcriptomic studies identified genes shared by cell lines and PDX explants as ERα targets. The selective ERα downregulator (SERD) fulvestrant is more effective than tamoxifen in blocking ERα action. ERα H-score is predictive of efficacy of endocrine therapy, and this prediction is further improved by inclusion of target gene expression, particularly IGFBP3Conclusions: Laboratory models corroborate intertumor heterogeneity of endocrine response in HGSOC but identify features associated with functional ERα and endocrine responsiveness. Assessing ERα function (e.g., IGFBP3 expression) in conjunction with H-score may help select patients who would benefit from endocrine therapy. Preclinical data suggest that SERDs might be more effective than tamoxifen. Clin Cancer Res; 23(14); 3802-12. ©2017 AACR.
Insights
High-grade serous ovarian cancer (HGSOC) shows estrogen receptor-alpha (ERα) dependency. Targeting ERα with endocrine therapy, particularly selective ERα downregulators (SERDs), may improve patient outcomes by identifying responsive tumors.
Area of Science:
- Oncology
- Endocrinology
- Molecular Biology
Background:
- High-grade serous ovarian cancer (HGSOC) is aggressive with limited targeted therapies.
- Estrogen receptor-alpha (ERα) is highly expressed in HGSOC, yet understudied as a therapeutic target.
- Previous trials suggest potential efficacy of endocrine therapy in HGSOC.
Purpose of the Study:
- To identify hormone-responsive, ERα-dependent HGSOC.
- To investigate ERα's role in HGSOC proliferation and gene expression.
- To evaluate predictors of endocrine therapy response in HGSOC.
Main Methods:
- Characterized endocrine response in HGSOC cell lines (2D, 3D, suspension) and patient-derived xenografts (PDX).
- Identified estrogen-regulated genes and overlapped with public datasets to create an ERα target gene panel.
- Assessed ERα H-score and target gene expression (e.g., IGFBP3) in patient samples treated with endocrine therapy.
Main Results:
- ERα regulates HGSOC cell proliferation in vitro and in vivo, influenced by 3D culture context.
- Identified shared ERα target genes in cell lines and PDX models.
- Selective ERα downregulators (SERDs) like fulvestrant were more effective than tamoxifen.
- ERα H-score and IGFBP3 expression predicted endocrine therapy efficacy.
Conclusions:
- Laboratory models confirm heterogeneity in HGSOC endocrine response.
- Features like ERα function (IGFBP3 expression) alongside H-score can identify patients benefiting from endocrine therapy.
- Preclinical data suggest SERDs may be superior to tamoxifen for HGSOC treatment.

